The fate of optical excitons in FAPbI3 nanocube superlattices

Fuente: arXiv
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Hauptverfasser: Milloch, Alessandra, Filippi, Umberto, Franceschini, Paolo, Mor, Selene, Pagliara, Stefania, Ferrini, Gabriele, Camargo, Franco V. A., Cerullo, Giulio, Baranov, Dmitry, Manna, Liberato, Giannetti, Claudio
Format: Preprint
Veröffentlicht: 2024
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author Milloch, Alessandra
Filippi, Umberto
Franceschini, Paolo
Mor, Selene
Pagliara, Stefania
Ferrini, Gabriele
Camargo, Franco V. A.
Cerullo, Giulio
Baranov, Dmitry
Manna, Liberato
Giannetti, Claudio
author_facet Milloch, Alessandra
Filippi, Umberto
Franceschini, Paolo
Mor, Selene
Pagliara, Stefania
Ferrini, Gabriele
Camargo, Franco V. A.
Cerullo, Giulio
Baranov, Dmitry
Manna, Liberato
Giannetti, Claudio
contents Understanding the nature of the photoexcitation and ultrafast charge dynamics pathways in organic halide perovskite nanocubes and their aggregation into superlattices is key for the potential applications as tunable light emitters, photon harvesting materials and light-amplification systems. In this work, we apply two-dimensional coherent electronic spectroscopy (2DES) to track in real time the formation of near-infrared optical excitons and their ultrafast relaxation in CH(NH2)2PbI3 nanocube superlattices. Our results unveil that the coherent ultrafast dynamics is limited by the combination of the inherent short exciton decay time ~40 fs and the dephasing due to the coupling with selective optical phonon modes at higher temperatures. On the picosecond timescale, we observe the progressive formation of long-lived localized trap states. The analysis of the temperature dependence of the excitonic intrinsic linewidth, as extracted by the anti-diagonal components of the 2D spectra, unveils a dramatic change of the excitonic coherence time across the cubic to tetragonal structural transition. Our results offer a new way to control and enhance the ultrafast coherent dynamics of photocarrier generation in hybrid halide perovskite synthetic solids.
format Preprint
id arxiv_https___arxiv_org_abs_2401_16999
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The fate of optical excitons in FAPbI3 nanocube superlattices
Milloch, Alessandra
Filippi, Umberto
Franceschini, Paolo
Mor, Selene
Pagliara, Stefania
Ferrini, Gabriele
Camargo, Franco V. A.
Cerullo, Giulio
Baranov, Dmitry
Manna, Liberato
Giannetti, Claudio
Mesoscale and Nanoscale Physics
Materials Science
Optics
Understanding the nature of the photoexcitation and ultrafast charge dynamics pathways in organic halide perovskite nanocubes and their aggregation into superlattices is key for the potential applications as tunable light emitters, photon harvesting materials and light-amplification systems. In this work, we apply two-dimensional coherent electronic spectroscopy (2DES) to track in real time the formation of near-infrared optical excitons and their ultrafast relaxation in CH(NH2)2PbI3 nanocube superlattices. Our results unveil that the coherent ultrafast dynamics is limited by the combination of the inherent short exciton decay time ~40 fs and the dephasing due to the coupling with selective optical phonon modes at higher temperatures. On the picosecond timescale, we observe the progressive formation of long-lived localized trap states. The analysis of the temperature dependence of the excitonic intrinsic linewidth, as extracted by the anti-diagonal components of the 2D spectra, unveils a dramatic change of the excitonic coherence time across the cubic to tetragonal structural transition. Our results offer a new way to control and enhance the ultrafast coherent dynamics of photocarrier generation in hybrid halide perovskite synthetic solids.
title The fate of optical excitons in FAPbI3 nanocube superlattices
topic Mesoscale and Nanoscale Physics
Materials Science
Optics
url https://arxiv.org/abs/2401.16999